Determination of the smoke-plume heights and their dynamics with ground-based scanning lidar

被引:4
|
作者
Kovalev, V. [1 ]
Petkov, A. [1 ]
Wold, C. [1 ]
Urbanski, S. [1 ]
Hao, W. M. [1 ]
机构
[1] Forest Serv, USDA, Fire Sci Lab, Missoula, MT 59808 USA
关键词
FIRE EMISSIONS;
D O I
10.1364/AO.54.002011
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
Lidar-data processing techniques are analyzed, which allow determining smoke-plume heights and their dynamics and can be helpful for the improvement of smoke dispersion and air quality models. The data processing algorithms considered in the paper are based on the analysis of two alternative characteristics related to the smoke dispersion process: the regularized intercept function, extracted directly from the recorded lidar signal, and the square-range corrected backscatter signal, obtained after determining and subtracting the constant offset in the recorded signal. The analysis is performed using experimental data of the scanning lidar obtained in the area of prescribed fires. (C) 2015 Optical Society of America
引用
收藏
页码:2011 / 2017
页数:7
相关论文
共 50 条
  • [1] Determination of smoke plume and layer heights using scanning lidar data
    Kovalev, Vladimir A.
    Petkov, Alexander
    Wold, Cyle
    Urbanski, Shawn
    Hao, Wei Min
    APPLIED OPTICS, 2009, 48 (28) : 5287 - 5294
  • [2] Investigation of optical characteristics and smoke-plume dynamics in the wildfire vicinity with lidar
    Kovalev, V.
    Hao, Wei Min
    Wold, C.
    Newton, J.
    Latham, D. J.
    Petkov, A.
    REMOTE SENSING OF FIRE: SCIENCE AND APPLICATION, 2008, 7089
  • [3] Validation of smoke plume rise models using ground-based lidar
    Urbanski, S.
    Kovalev, V.
    Petkov, A.
    Scalise, A.
    Wold, C.
    Hao, W. M.
    REMOTE SENSING FOR AGRICULTURE, ECOSYSTEMS, AND HYDROLOGY XVI, 2014, 9239
  • [4] PHOTOGRAPHIC MEASUREMENT OF SMOKE-PLUME HEIGHTS FROM INDUSTRIAL STACKS
    FANAKI, FH
    LESINS, G
    JOURNAL OF THE SMPTE-SOCIETY OF MOTION PICTURE AND TELEVISION ENGINEERS, 1974, 83 (12): : 983 - 983
  • [5] Automatic recognition of smoke-plume signatures in lidar signal
    Utkin, Andrei B.
    Lavrov, Alexander
    Vilar, Rui
    XVII INTERNATIONAL SYMPOSIUM ON GAS FLOW, CHEMICAL LASERS, AND HIGH-POWER LASERS, 2009, 7131
  • [6] Lagrangian simulation of smoke plume from fire and validation using ground-based lidar and aircraft measurements
    Ferrero, Enrico
    Alessandrini, Stefano
    Anderson, Bret
    Tomasi, Elena
    Jimenez, Pedro
    Meech, Scott
    ATMOSPHERIC ENVIRONMENT, 2019, 213 : 659 - 674
  • [7] Assessing forest metrics with a ground-based scanning lidar
    Hopkinson, C
    Chasmer, L
    Young-Pow, C
    Treitz, P
    CANADIAN JOURNAL OF FOREST RESEARCH, 2004, 34 (03) : 573 - 583
  • [8] GROUND-BASED MOBILE SCANNING LIDAR FOR REMOTE-SENSING OF CONTRAILS
    FREUDENTHALER, V
    HOMBURG, F
    JAGER, H
    ANNALES GEOPHYSICAE-ATMOSPHERES HYDROSPHERES AND SPACE SCIENCES, 1994, 12 (10-11): : 956 - 961
  • [9] Vortex dynamics behind cruising aircraft studied by a ground-based scanning LIDAR and airborne in situ measurements
    Sussmann, R
    Jager, H
    LIDAR ATMOSPHERIC MONITORING, 1997, 3104 : 212 - 223
  • [10] DWEL: A DUAL-WAVELENGTH ECHIDNA LIDAR FOR GROUND-BASED FOREST SCANNING
    Douglas, Ewan S.
    Strahler, Alan
    Martel, Jason
    Cook, Timothy
    Mendillo, Christopher
    Marshall, Robert
    Chakrabarti, Supriya
    Schaaf, Crystal
    Woodcock, Curtis
    Li, Zhan
    Yang, Xiaoyuan
    Culvenor, Darius
    Jupp, David
    Newnham, Glenn
    Lovell, Jenny
    2012 IEEE INTERNATIONAL GEOSCIENCE AND REMOTE SENSING SYMPOSIUM (IGARSS), 2012, : 4998 - 5001